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will be determined by various characterization techniques (EPMA, XRD, SEM-EDS-EBSD). Thermodynamic properties such as the heat capacity and enthalpy of formation of defined compounds will be measured by
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HPLC, as well as mineralogical characterization using XRD, SEM-EDS, and EPMA. Furthermore, he/she will be responsible for interpreting the geochemical and mineralogical data obtained and preparing
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on thermoelectric properties. The different materials obtained will be characterized in terms of structure at different scales (XRD, SEM, XRR, Raman, etc.) and chemistry (XPS, Raman, etc.). The first thermoelectric
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Level 46 Salary Range $52,021-85,800/year Type of Position Staff Position Time Status Full-Time Required Education MS Click here for more information about equivalencies: https://hr.uky.edu/employment
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Laboratory with the Synchrotron Science Group and involve occasional travel to Gaithersburg, MD. The candidate would be responsible for planning and performing high-throughput XAS, XRF, and XRD measurements
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model of the resulting composite properties Characterisation: Utilising advanced characterisation tools, including X-ray Computed Tomography (CT), XRD, small angle scattering and mechanical testing
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using digital optical microscopy, TEM and XRD. Various experimental conditions will be investigated. The influence of the size of the injected aluminium particles, the air-fuel ratio (from 0.4 to 1.4) and
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materials with adapted surface properties for electrosorptive CO2 Capturing structural and physicochemical characterization of carbon materials: application of modern analytical methods e.g. XRD, Raman
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reconstructions (EBSD). • Performing in situ high-energy XRD (HEXRD) experiments to track the carbides fractions and the carbon concentration in the austenite [2]. In these experiments, the samples will have
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. Perform structural and chemical analysis of materials using tools such as XRD, SEM, and XPS. Optoelectronic Development & Integration: Conduct experimental studies on the development and application